首页> 外文会议>Earth observing missions and sensors: development, implementation, and characterization IV >Atmospheric profiling via satellite to satellite occultations near water and ozone absorption lines for weather and climate
【24h】

Atmospheric profiling via satellite to satellite occultations near water and ozone absorption lines for weather and climate

机译:在天气和气候条件下,通过水和臭氧吸收线附近的卫星至卫星掩星进行大气廓线分析

获取原文
获取原文并翻译 | 示例

摘要

Significantly reducing weather and climate prediction uncertainty requires global observations with substantially higher information content than present observations provide. While GPS occultations have provided a major advance, GPS observations of the atmosphere are limited by wavelengths chosen specifically to minimize interaction with the atmosphere. Significantly more information can be obtained via satellite to satellite occultations made at wavelengths chosen specifically to characterize the atmosphere. Here we describe such a system that will probe cm- and mm-wavelength water vapor absorption lines called the Active Temperature, Ozone and Moisture Microwave Spectrometer (ATOMMS). Profiling both the speed and absorption of light enables ATOMMS to profile temperature, pressure and humidity simultaneously, which GPS occultations cannot do, as well as profile clouds and turbulence. We summarize the ATOMMS concept and its theoretical performance. We describe field measurements made with a prototype ATOMMS instrument and several important capabilities demonstrated with those ground based measurements including retrieving temporal variations in path-averaged water vapor to 1%, in clear, cloudy and rainy conditions, up to optical depths of 17, remotely sensing turbulence and determining rain rates. We conclude with a vision of a future ATOMMS low Earth orbiting satellite constellation designed to take advantage of synergies between observational needs for weather and climate, ATOMMS unprecedented orbital remote sensing capabilities and recent cubesat technological innovations that enable a constellation of dozens of very small spacecraft to achieve many critical, but as yet unfulfilled, monitoring and forecasting needs.
机译:要显着减少天气和气候预测的不确定性,就需要对全球观测资料的需求要远远高于目前的观测资料。尽管GPS掩星技术取得了重大进步,但对GPS大气的观测受到特定波长的限制,这些波长是为最大程度地减少与大气的相互作用而选择的。可以通过在专门为表征大气而选择的波长下进行的卫星掩星掩星获得更多的信息。在这里,我们描述了这样一种系统,该系统将探测称为活动温度,臭氧和水分微波光谱仪(ATOMMS)的厘米和毫米波长的水蒸气吸收线。对光速和光吸收进行分析可以使ATOMMS同时分析温度,压力和湿度,而GPS掩星无法做到,还可以分析云和湍流。我们总结了ATOMMS概念及其理论性能。我们描述了使用原型ATOMMS仪器进行的现场测量,以及这些基于地面的测量所展示的一些重要功能,包括在晴天,阴天和雨天条件下,将路径平均水蒸气的时间变化检索到1%,远程达到光学深度17感知湍流并确定降雨率。我们以未来ATOMMS近地轨道卫星星座为愿景,该星座旨在利用天气和气候观测需求之间的协同作用,ATOMMS前所未有的轨道遥感能力以及最新的立方体技术创新,这些创新技术使数十个非常小的航天器星座能够满足许多关键但尚未实现的监视和预测需求。

著录项

  • 来源
  • 会议地点 New Delhi(IN)
  • 作者单位

    Space Sciences Engineering, LLC, 2425 55th St, Ste A-150, Boulder, CO, 80301 USA;

    University of Arizona, 1118 4th St., Tucson, AZ, 85721 USA;

    TMT International Observatory, 100 W Walnut St Ste 300, Pasadena, CA 91124 USA;

    Space Sciences Engineering, LLC, 2425 55th St, Ste A-150, Boulder, CO, 80301 USA;

    Environmental Protection Agency, Denver, CO 80202-1129 USA;

    University of Arizona, 1118 4th St., Tucson, AZ, 85721 USA;

    LASP, University of Colorado, Boulder, CO 80303 USA;

    LASP, University of Colorado, Boulder, CO 80303 USA;

    Space Sciences Engineering, LLC, 2425 55th St, Ste A-150, Boulder, CO, 80301 USA;

    Space Sciences Engineering, LLC, 2425 55th St, Ste A-150, Boulder, CO, 80301 USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号